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通过胆汁酸转运通道口服给予蛋白质/肽的递药系统。

A Delivery System for Oral Administration of Proteins/Peptides Through Bile Acid Transport Channels.

机构信息

Department of Pharmaceutics, School of Pharmacy, Shenyang Pharmaceutical University, 103 Wenhua Road, Shenyang 110016, China.

Department of Biochemistry and Molecular Biology, School of Life Sciences and Biological Pharmacy, Shenyang Pharmaceutical University, 103 Wenhua Road, Shenyang 110016, China.

出版信息

J Pharm Sci. 2019 Jun;108(6):2143-2152. doi: 10.1016/j.xphs.2019.01.027. Epub 2019 Feb 2.

Abstract

Proteins and peptides are poorly absorbed via oral administration because of the gastrointestinal tract environment and lysosomal digestion after apical endocytosis. A delivery system, consisting of a deoxycholic acid-conjugated nanometer-sized carrier, may enhance the absorption of proteins in the intestine via the bile acid pathway. Deoxycholic acid is first conjugated to chitosan. Liposomes are then prepared and loaded with the model drug insulin. Finally, the conjugates are bound to the liposome surface to form deoxycholic acid and chitosan conjugate-modified liposomes (DC-LIPs). This study demonstrates that DC-LIPs can promote the intestinal absorption of insulin via the apical sodium-dependent bile acid transporter, based on observing fluorescently stained tissue slices of the rat small intestine and a Caco-2 cell uptake experiment. Images of intestinal slices revealed that excellent absorption of DC-LIPs is achieved via apical sodium-dependent bile acid transporter, and a flow cytometry experiment proved that DC-LIPs are a highly efficient delivery carrier. Caco-2 cells were also used to study the lysosome escape ability of DC-LIPs. We learned from confocal microscopy photographs that DC-LIPs can protect their contents from being destroyed by the lysosome. Finally, according to pharmacokinetic analyses, insulin-loaded DC-LIPs show a significant hypoglycemic effect with an oral bioavailability of 16.1% in rats with type I diabetes.

摘要

蛋白质和肽由于胃肠道环境和吸收后的溶酶体消化,经口服给药时吸收较差。一种由脱氧胆酸偶联的纳米载体组成的递药系统,可能通过胆汁酸途径增强肠道内蛋白质的吸收。首先将脱氧胆酸与壳聚糖偶联。然后制备脂质体并载入模型药物胰岛素。最后,将缀合物结合到脂质体表面,形成脱氧胆酸和壳聚糖缀合物修饰的脂质体(DC-LIPs)。本研究通过观察大鼠小肠荧光染色组织切片和 Caco-2 细胞摄取实验,证明 DC-LIPs 可通过顶端钠依赖性胆汁酸转运蛋白促进胰岛素的肠道吸收。肠切片图像显示,DC-LIPs 通过顶端钠依赖性胆汁酸转运蛋白实现了优异的吸收,而流式细胞术实验证明 DC-LIPs 是一种高效的递药载体。还使用 Caco-2 细胞研究了 DC-LIPs 的溶酶体逃逸能力。从共聚焦显微镜照片中我们了解到,DC-LIPs 可以保护其内容物免受溶酶体的破坏。最后,根据药代动力学分析,载胰岛素的 DC-LIPs 在 I 型糖尿病大鼠中表现出显著的降血糖作用,口服生物利用度为 16.1%。

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